具有层次调节和稳定预测的有效可调度太阳能发电

IF 5.7 1区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Dazhi Yang;Guoming Yang;Marc J. Perez;Richard Perez
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引用次数: 0

摘要

迄今为止,太阳能的可变性一直被认为是阻碍大规模高渗透太阳能进入电网的主要障碍。根据几十年的研究,特别是最近几年取得的进展,现在人们相信,可调度的太阳能发电不再是一个概念,而是很快就会在技术上经济上可行。气象中心、电网运营商和光伏电站所有者之间政策驱动的信息交换是实现太阳能可调度的关键。本文介绍了实现可调度太阳能发电的五步预测框架。在五个步骤中,前三个步骤,即数值天气预报(NWP)、预报后处理和辐射功率转换,是大多数人所熟悉的。最后两个步骤,即等级调和和坚定预测,是相当新的概念,尚未引起广泛的认识。通过在电厂和变电站层面实现有效可调度的太阳能发电的案例研究,证明了所提出的框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effectively Dispatchable Solar Power with Hierarchical Reconciliation and Firm Forecasting
The variable nature of solar power has hitherto been regarded as a major barrier preventing large-scale high-penetration solar energy into the power grid. Based on decades of research, particularly those advances made over the recent few years, it is now believed that dispatchable solar power is no longer a conception but will soon become techno-economically feasible. The policy-driven information exchange among the weather centers, grid operators, and photovoltaic plant owners is the key to realizing dispatchable solar power. In this paper, a five-step forecasting framework for enabling dispatchable solar power is introduced. Among the five steps, the first three, namely numerical weather prediction (NWP), forecast post-processing, and irradiance-to-power conversion, have long been familiar to most. The last two steps, namely hierarchical reconciliation and firm forecasting, are quite recent conceptions, which have yet to raise widespread awareness. The proposed framework is demonstrated through a case study on achieving effectively dispatchable solar power generation at plant and substation levels.
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来源期刊
Journal of Modern Power Systems and Clean Energy
Journal of Modern Power Systems and Clean Energy ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
12.30
自引率
14.30%
发文量
97
审稿时长
13 weeks
期刊介绍: Journal of Modern Power Systems and Clean Energy (MPCE), commencing from June, 2013, is a newly established, peer-reviewed and quarterly published journal in English. It is the first international power engineering journal originated in mainland China. MPCE publishes original papers, short letters and review articles in the field of modern power systems with focus on smart grid technology and renewable energy integration, etc.
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